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2102618

先進複合材料市場:2034 年預測-按纖維類型、基體類型、樹脂類型、製造流程、產品形式、應用、最終用戶和地區分類的全球分析

Advanced Composites Market Forecasts To 2034 - Global Analysis By Fiber Type, Matrix Type, Resin Type, Manufacturing Process, Product Form, Application, End-User and By Geography

出版日期: | 出版商: Stratistics Market Research Consulting | 英文 | 商品交期: 2-3個工作天內

價格

根據 Stratistics MRC 的數據,預計到 2026 年,全球先進複合材料市場規模將達到 107 億美元,並在預測期內以 14.2% 的複合年成長率成長,到 2034 年將達到 311 億美元。

先進複合材料市場涵蓋了將碳纖維、玻璃纖維和芳香聚醯胺等高強度纖維與聚合物、金屬或陶瓷基質相結合而實現卓越結構性能的工程材料。這些複合材料因其輕質、高剛性、優異的耐腐蝕性、長使用壽命和多功能設計能力而備受青睞。它們在航太、汽車、可再生能源、船舶、建築、國防、電子和工業製造等行業中發揮著至關重要的作用,這些行業需要在嚴苛的運作條件下使用可靠的材料。複合材料加工技術、先進樹脂體系、自動化和永續回收方法的持續創新,正在推動材料性能、製造精度和環境相容性在廣泛的工業應用領域中得到提升。

交通運輸領域對輕量材料的需求不斷成長

在交通運輸領域,人們越來越依賴輕量材料來提高營運效率、結構性能和設計柔軟性。先進複合材料兼具高機械強度和輕質特性,使其適用於航太、汽車、鐵路和船舶等領域。與傳統材料相比,它們具有更高的耐久性、更優異的耐腐蝕性和在重複負載條件下的卓越性能。其多功能性使工程師能夠在不影響結構完整性的前提下開發複雜的零件。自動化生產和材料加工技術的進步正在推動商業性應用。隨著製造商不斷優先考慮效率、可靠性和長期性能,先進複合材料在下一代交通運輸工程中扮演著日益重要的角色。

高昂的製造和加工成本

由於需要昂貴的增強纖維、專用樹脂體系、專用設備以及嚴格控制的生產流程,先進複合材料的生產成本很高。自動化層壓、精密成型和先進固化技術等複雜的製造方法需要大量的資金投入和先進的技術專長。維持嚴格的品質標準也會增加整個生產過程的營運成本。預算有限的企業可能會因為相關的基礎設施和加工成本而猶豫是否採用這些材料。在成本仍然是主要採購因素的行業中,傳統的金屬和塑膠往往仍然是首選,這限制了先進複合材料儘管具有優異的工程性能,但其應用範圍卻受到限制。

複合材料自動化製造技術的進步

自動化製造技術的應用提高了生產精度、營運效率和製造一致性,從而拓展了先進複合材料的商業性潛力。基於機器人的製造、自動化層壓系統、數位化品質檢測和智慧製程控制等技術,使製造商能夠以更高的重複性和更最佳化的資源利用率生產先進複合材料零件。這些創新降低了生產複雜性,同時實現了工業應用的大規模生產。數位化製造技術的整合進一步提升了產品品質和運作可靠性。隨著自動化在工業設施中日益普及,先進複合材料有望在許多高性能工程領域中得到更廣泛的應用。

智慧財產權和技術競爭

隨著先進複合材料產業競爭日益激烈,保護專有技術變得愈發重要。製造商投入大量資源開發專用材料配方、生產技術和工程解決方案,以獲得競爭優勢。然而,專利糾紛、技術模仿和未經授權的技術轉移會削弱市場地位,降低創新投資報酬率。企業必須在持續研發活動和有效的智慧財產權管理之間取得平衡,才能維持技術領先地位。隨著複合材料技術的不斷發展,保護專有技術仍然是企業在全球先進材料市場尋求永續競爭力的關鍵挑戰。

新型冠狀病毒(COVID-19)的影響:

新冠疫情為先進複合材料市場帶來了巨大的營運挑戰,導致生產中斷、勞動力短缺和全球物流網路中斷。增強纖維、特殊樹脂和其他關鍵材料的採購延遲影響了多個行業的生產計劃。儘管由於航太、汽車和基礎設施項目活動的減少,複合材料的需求暫時下降,但在醫療、國防和能源等關鍵應用領域,需求仍保持穩定。隨著工業設施逐步復工復產和供應鏈的恢復,製造商已恢復生產,以提高營運效率、加強籌資策略,並滿足各個終端應用領域持續的工業需求。

在預測期內,碳纖維複合材料細分市場預計將佔據最大的市場佔有率。

由於碳纖維複合材料具有卓越的機械性能、輕質特性、優異的抗疲勞性能以及在眾多工業應用中出色的尺寸穩定性,預計在預測期內,碳纖維複合材料領域將佔據最大的市場佔有率。製造商正利用碳纖維複合材料生產用於航太、汽車、可再生能源、國防、船舶和工業領域的先進結構部件,這些領域對耐久性和精度要求極高。這些材料為工程師提供了設計柔軟性,同時滿足嚴苛運作的高性能要求。碳纖維複合材料在現代製造業中日益重要的地位,得益於複合材料製造流程和材料工程的不斷進步。

在預測期內,「結構部件」細分市場預計將呈現最高的複合年成長率。

在預測期內,「結構件」細分市場預計將呈現最高的成長率。隨著各行業在關鍵結構應用中採用先進複合材料,對卓越機械性能、輕量化結構和長期耐久性的需求不斷成長。這些材料廣泛應用於飛機結構、汽車車架、風力發電機葉片、船舶系統、工業設備和基礎設施項目等對高承載能力要求極高的領域。優異的耐腐蝕性、抗疲勞性和對惡劣運行環境的耐受性確保了其在漫長的使用壽命中始終保持可靠的性能。複合材料加工技術的進步、材料創新以及自動化生產方法的不斷改進,持續拓展結構件在各種高性能工程領域的應用。

市佔率最大的地區:

在預測期內,北美預計將佔據最大的市場佔有率,這得益於其成熟的工業生態系統、先進的工程能力以及複合材料在各領域的廣泛應用。該地區航太、國防、汽車、風力發電、建築和工業製造等產業對輕質高耐久材料的需求顯著。對研發、製造自動化和下一代複合材料技術的持續投入,正在提升產能並拓展應用範圍。眾多成熟的製造商、技術開發公司和研發中心,以及貫穿整個產業鏈的緊密合作,鞏固了北美在全球先進複合材料產業的主導地位。

複合年成長率最高的地區:

在預測期內,亞太地區預計將呈現最高的複合年成長率。由於工業化進程的推進、製造基礎設施的擴張以及先進工程材料應用的日益普及,複合材料在眾多工業領域的應用正在加速成長。先進複合材料正被引入航太、汽車、可再生能源、電子、船舶和建築等行業,以提升產品性能和生產效率。對生產技術、研發和材料創新的持續投入正在增強該地區的製造能力。憑藉穩健的產業供應鏈、不斷提升的技術專長以及對高性能材料日益成長的需求,亞太地區在全球先進複合材料產業中的地位正持續鞏固。

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目錄

第1章執行摘要

  • 市場概覽及主要亮點
  • 促進因素、挑戰與機遇
  • 競爭格局概述
  • 戰略洞察與建議

第2章:研究框架

  • 研究目標和範圍
  • 相關人員分析
  • 研究假設和限制
  • 調查方法

第3章 市場動態與趨勢分析

  • 市場定義與結構
  • 主要市場促進因素
  • 市場限制與挑戰
  • 投資成長機會和重點領域
  • 產業威脅與風險評估
  • 技術與創新展望
  • 新興市場/高成長市場
  • 監管和政策環境
  • 新冠疫情的影響及復甦前景

第4章:競爭環境與策略評估

  • 波特五力分析
    • 供應商的議價能力
    • 買方的議價能力
    • 替代品的威脅
    • 新進入者的威脅
    • 競爭公司之間的競爭
  • 主要公司市佔率分析
  • 產品基準評效和效能比較

第5章:全球先進複合材料市場:依纖維類型分類

  • 碳纖維複合材料
  • 玻璃纖維複合材料
  • 醯胺纖維複合材料
  • 玄武岩纖維複合材料
  • 天然纖維複合材料
  • 陶瓷纖維複合材料
  • 混合纖維複合材料

第6章:全球先進複合材料市場:依基體類型分類

  • 高分子複合材料(PMCs)
  • 金屬複合材料(MMCs)
  • 陶瓷基質複合材料(CMC)

第7章 全球先進複合材料市場:依樹脂類型分類

  • 環氧樹脂
  • 聚酯纖維
  • 乙烯基酯
  • 酚類
  • 聚醯胺(PA)
  • 聚醚醚酮(PEEK)
  • 聚亞苯硫醚(PPS)
  • 其他高性能樹脂

第8章:全球先進複合材料市場:依製造流程分類

  • 手工積層
  • 噴灑法
  • 纏繞成型
  • 拉擠成型
  • 樹脂傳遞模塑(RTM)
  • 真空輸液
  • 壓縮成型
  • 射出成型
  • 自動光纖鋪放(AFP)
  • 自動膠帶層壓(ATL)

第9章:全球先進複合材料市場:依產品類型分類

  • 預孕
  • 織物
  • 層壓木材
  • 蜂巢結構
  • 夾芯板
  • 輪廓
  • 管材和管道

第10章:全球先進複合材料市場:依應用領域分類

  • 結構部件
  • 半結構部件
  • 非結構性零件
  • 內部零件
  • 外部部件

第11章 全球先進複合材料市場:依最終用戶分類

  • 航太/國防
  • 汽車和運輸業
  • 風力
  • 建築和基礎設施
  • 海上
  • 電氣和電子設備
  • 石油和天然氣
  • 工業設備
  • 醫學領域
  • 體育用品

第12章 全球先進複合材料市場:按地區分類

  • 北美洲
    • 美國
    • 加拿大
    • 墨西哥
  • 歐洲
    • 英國
    • 德國
    • 法國
    • 義大利
    • 西班牙
    • 荷蘭
    • 比利時
    • 瑞典
    • 瑞士
    • 波蘭
    • 其他歐洲國家
  • 亞太地區
    • 中國
    • 日本
    • 印度
    • 韓國
    • 澳洲
    • 印尼
    • 泰國
    • 馬來西亞
    • 新加坡
    • 越南
    • 其他亞太國家
  • 南美洲
    • 巴西
    • 阿根廷
    • 哥倫比亞
    • 智利
    • 秘魯
    • 其他南美國家
  • 世界其他地區(RoW)
    • 中東
      • 沙烏地阿拉伯
      • 阿拉伯聯合大公國
      • 卡達
      • 以色列
      • 其他中東國家
    • 非洲
      • 南非
      • 埃及
      • 摩洛哥
      • 其他非洲國家

第13章 戰略市場資訊

  • 工業價值網路和供應鏈評估
  • 空白區域和機會地圖
  • 產品演進與市場生命週期分析
  • 通路、經銷商和打入市場策略的評估

第14章 產業趨勢與策略舉措

  • 併購
  • 夥伴關係、聯盟和合資企業
  • 新產品發布和認證
  • 擴大生產能力和投資
  • 其他策略舉措

第15章:公司簡介

  • Hexcel Corporation
  • Toray Industries, Inc.
  • Teijin Limited
  • SGL Carbon SE
  • Solvay SA
  • Mitsubishi Chemical Group Corporation
  • Syensqo
  • Owens Corning
  • Gurit Holding AG
  • Huntsman Corporation
  • Park Aerospace Corp.
  • Kordsa Teknik Tekstil AS
  • Saertex GmbH & Co. KG
  • Jushi Group Co., Ltd.
  • TPI Composites, Inc.
  • Exel Composites Plc
  • Avient Corporation
  • Compagnie de Saint-Gobain SA
Product Code: SMRC38445

According to Stratistics MRC, the Global Advanced Composites Market is accounted for $10.7 billion in 2026 and is expected to reach $31.1 billion by 2034 growing at a CAGR of 14.2% during the forecast period. The advanced composites market encompasses engineered materials created by integrating high-strength fibers, including carbon, glass, and aramid, with polymer, metal, or ceramic matrices to deliver superior structural performance. These composites are valued for their lightweight nature, high stiffness, excellent corrosion resistance, long service life, and versatile design capabilities. They play a vital role in industries such as aerospace, automotive, renewable energy, marine, construction, defense, electronics, and industrial manufacturing, where demanding operating conditions require reliable materials. Ongoing innovations in composite processing techniques, advanced resin systems, automation, and sustainable recycling practices continue to enhance material performance, manufacturing precision, and environmental compatibility across a broad range of industrial applications.

Market Dynamics:

Driver:

Increasing Demand for Lightweight Materials in Transportation

The transportation sector increasingly relies on lightweight materials to improve operational efficiency, structural performance, and design flexibility. Advanced composites combine high mechanical strength with reduced mass, making them suitable for aerospace, automotive, railway, and marine applications. Compared with traditional materials, they enhance durability, resist corrosion, and perform well under cyclic loading conditions. Their versatility allows engineers to develop complex components without compromising structural integrity. Advances in automated production techniques and material processing have expanded commercial utilization across multiple transportation platforms. As manufacturers continue emphasizing efficiency, reliability, and long-term performance, advanced composites play an increasingly important role in next-generation transportation engineering.

Restraint:

High Manufacturing and Processing Costs

The production of advanced composites involves expensive reinforcement fibers, engineered resin systems, specialized machinery, and carefully controlled manufacturing procedures, resulting in elevated production costs. Complex fabrication methods, including automated layup, precision molding, and advanced curing technologies, require substantial financial investment and technical expertise. Maintaining strict quality standards also increases operational expenses throughout manufacturing. Organizations with limited budgets may hesitate to implement these materials because of the associated infrastructure and processing costs. In industries where cost remains the primary purchasing factor, conventional metals and plastics frequently remain preferred choices, restricting wider utilization of advanced composite materials despite their superior engineering characteristics.

Opportunity:

Advancements in Automated Composite Manufacturing

The adoption of automated manufacturing technologies is enhancing the commercial potential of advanced composites by improving production precision, operational efficiency, and manufacturing consistency. Robotic fabrication, automated layup systems, digital quality inspection, and intelligent process control allow manufacturers to produce sophisticated composite components with greater repeatability and optimized resource utilization. These innovations reduce production complexity while supporting larger manufacturing volumes for industrial applications. Integration of digital manufacturing technologies further strengthens product quality and operational reliability. As automation becomes increasingly common across industrial facilities, advanced composites are positioned for wider implementation in numerous high-performance engineering sectors.

Threat:

Intellectual Property and Technology Competition

Protecting proprietary technologies has become increasingly important as competition intensifies across the advanced composites industry. Manufacturers invest substantial resources in developing specialized material formulations, production techniques, and engineering solutions that provide competitive advantages. However, patent disputes, technology imitation, and unauthorized knowledge transfer can weaken market positioning and reduce returns on innovation investments. Companies must balance ongoing research activities with effective intellectual property management to preserve technological leadership. As composite technologies continue advancing, safeguarding proprietary expertise remains a critical challenge for organizations seeking sustained competitiveness in global advanced materials markets.

Covid-19 Impact:

The outbreak of COVID-19 created significant operational challenges for the advanced composites market by interrupting manufacturing activities, limiting workforce availability, and disrupting global logistics networks. Delays in sourcing reinforcement fibers, specialty resins, and other essential materials affected production schedules across multiple industries. Reduced activity in aerospace, automotive, and infrastructure projects temporarily lowered demand for composite products, while sectors such as healthcare, defense, and energy maintained consistent utilization for essential applications. Following the gradual reopening of industrial facilities and restoration of supply chains, manufacturers improved operational efficiency, strengthened sourcing strategies, and resumed production to support ongoing industrial requirements across diverse end-use sectors.

The Carbon Fiber Composites segment is expected to be the largest during the forecast period

The Carbon Fiber Composites segment is expected to account for the largest market share during the forecast period, driven by outstanding mechanical performance, lightweight characteristics, excellent fatigue resistance, and superior dimensional stability across numerous industrial applications. Manufacturers rely on carbon fiber composites for producing advanced structural components used in aerospace, automotive, renewable energy, defense, marine, and industrial sectors where durability and precision are essential. These materials provide engineers with greater design flexibility while supporting high-performance requirements under challenging operating conditions. Ongoing advancements in composite fabrication processes and material engineering continue reinforcing the importance of carbon fiber composites in modern manufacturing.

The Structural Components segment is expected to have the highest CAGR during the forecast period

Over the forecast period, the Structural Components segment is predicted to witness the highest growth rate. Demand is increasing as industries adopt advanced composites for critical structural applications requiring superior mechanical performance, lightweight construction, and long-term durability. These materials are widely incorporated into aircraft structures, automotive frames, wind turbine blades, marine systems, industrial equipment, and infrastructure projects where high load-bearing capability is essential. Their excellent resistance to corrosion, fatigue, and harsh operating environments supports dependable performance throughout extended service life. Advancements in composite processing techniques, material innovation, and automated production methods continue expanding the use of structural components across diverse high-performance engineering sectors.

Region with largest share:

During the forecast period, the North America region is expected to hold the largest market share, due to its mature industrial ecosystem, advanced engineering capabilities, and broad utilization of composite materials across multiple sectors. The region has significant demand from aerospace, defense, automotive, wind energy, construction, and industrial manufacturing industries that require lightweight and durable materials. Ongoing investments in research, manufacturing automation, and next-generation composite technologies strengthen production capabilities and application diversity. The presence of established manufacturers, technology developers, and innovation centers, combined with strong collaboration across industrial value chains, supports North America's leading position in the global advanced composites industry.

Region with highest CAGR:

Over the forecast period, the Asia Pacific region is anticipated to exhibit the highest CAGR, Increasing industrialization, expanding manufacturing infrastructure, and rising adoption of advanced engineering materials are accelerating the use of composite products across numerous industries. Aerospace, automotive, renewable energy, electronics, marine, and construction sectors are incorporating advanced composites to improve product performance and manufacturing efficiency. Continuous investment in production technologies, research initiatives, and material innovation is enhancing regional manufacturing capabilities. Supported by a strong industrial supply chain, expanding technical expertise, and increasing demand for high-performance materials, Asia-Pacific continues to strengthen its role in the global advanced composites industry.

Key players in the market

Some of the key players in Advanced Composites Market include Hexcel Corporation, Toray Industries, Inc., Teijin Limited, SGL Carbon SE, Solvay SA, Mitsubishi Chemical Group Corporation, Syensqo, Owens Corning, Gurit Holding AG, Huntsman Corporation, Park Aerospace Corp., Kordsa Teknik Tekstil A.S., Saertex GmbH & Co. KG, Jushi Group Co., Ltd., TPI Composites, Inc., Exel Composites Plc, Avient Corporation and Compagnie de Saint-Gobain S.A.

Key Developments:

In June 2026, Hexcel Corporation announced a long-term industrial partnership and supply agreement with Deutsche Aircraft for the D328eco(R) regional aircraft programme. The collaboration covers the supply of advanced composite materials and supports the development and industrialization of next-generation regional aircraft manufactured in Europe.

In April 2026, Toray Composite Materials America announced a strategic partnership with Convergent Manufacturing Technologies to advance digital engineering for aerospace and industrial composite applications.

In April 2026, Mitsubishi Chemical Corporation started a joint research collaboration with research partners to develop novel carbon composite materials for fusion reactor divertors.

Fiber Types Covered:

  • Carbon Fiber Composites
  • Glass Fiber Composites
  • Aramid Fiber Composites
  • Basalt Fiber Composites
  • Natural Fiber Composites
  • Ceramic Fiber Composites
  • Hybrid Fiber Composites

Matrix Types Covered:

  • Polymer Matrix Composites (PMCs)
  • Metal Matrix Composites (MMCs)
  • Ceramic Matrix Composites (CMCs)

Resin Types Covered:

  • Epoxy
  • Polyester
  • Vinyl Ester
  • Phenolic
  • Polyamide (PA)
  • Polyether Ether Ketone (PEEK)
  • Polyphenylene Sulfide (PPS)
  • Other High-Performance Resins

Manufacturing Process Covered:

  • Hand Lay-Up
  • Spray-Up
  • Filament Winding
  • Pultrusion
  • Resin Transfer Molding (RTM)
  • Vacuum Infusion
  • Compression Molding
  • Injection Molding
  • Automated Fiber Placement (AFP)
  • Automated Tape Laying (ATL)

Product Forms Covered:

  • Prepregs
  • Fabrics
  • Laminates
  • Honeycomb Structures
  • Sandwich Panels
  • Profiles
  • Tubes & Pipes

Applications Covered:

  • Structural Components
  • Semi-Structural Components
  • Non-Structural Components
  • Interior Components
  • Exterior Components

End Users Covered:

  • Aerospace & Defense
  • Automotive & Transportation
  • Wind Energy
  • Construction & Infrastructure
  • Marine
  • Electrical & Electronics
  • Oil & Gas
  • Industrial Equipment
  • Medical
  • Sporting Goods

Regions Covered:

  • North America
    • United States
    • Canada
    • Mexico
  • Europe
    • United Kingdom
    • Germany
    • France
    • Italy
    • Spain
    • Netherlands
    • Belgium
    • Sweden
    • Switzerland
    • Poland
    • Rest of Europe
  • Asia Pacific
    • China
    • Japan
    • India
    • South Korea
    • Australia
    • Indonesia
    • Thailand
    • Malaysia
    • Singapore
    • Vietnam
    • Rest of Asia Pacific
  • South America
    • Brazil
    • Argentina
    • Colombia
    • Chile
    • Peru
    • Rest of South America
  • Rest of the World (RoW)
    • Middle East
  • Saudi Arabia
  • United Arab Emirates
  • Qatar
  • Israel
  • Rest of Middle East
    • Africa
  • South Africa
  • Egypt
  • Morocco
  • Rest of Africa

What our report offers:

  • Market share assessments for the regional and country-level segments
  • Strategic recommendations for the new entrants
  • Covers Market data for the years 2023, 2024, 2025, 2026, 2027, 2028, 2030, 2032 and 2034
  • Market Trends (Drivers, Constraints, Opportunities, Threats, Challenges, Investment Opportunities, and recommendations)
  • Strategic recommendations in key business segments based on the market estimations
  • Competitive landscaping mapping the key common trends
  • Company profiling with detailed strategies, financials, and recent developments
  • Supply chain trends mapping the latest technological advancements

Free Customization Offerings:

All the customers of this report will be entitled to receive one of the following free customization options:

  • Company Profiling
    • Comprehensive profiling of additional market players (up to 3)
    • SWOT Analysis of key players (up to 3)
  • Regional Segmentation
    • Market estimations, Forecasts and CAGR of any prominent country as per the client's interest (Note: Depends on feasibility check)
  • Competitive Benchmarking
    • Benchmarking of key players based on product portfolio, geographical presence, and strategic alliances

Table of Contents

1 Executive Summary

  • 1.1 Market Snapshot and Key Highlights
  • 1.2 Growth Drivers, Challenges, and Opportunities
  • 1.3 Competitive Landscape Overview
  • 1.4 Strategic Insights and Recommendations

2 Research Framework

  • 2.1 Study Objectives and Scope
  • 2.2 Stakeholder Analysis
  • 2.3 Research Assumptions and Limitations
  • 2.4 Research Methodology
    • 2.4.1 Data Collection (Primary and Secondary)
    • 2.4.2 Data Modeling and Estimation Techniques
    • 2.4.3 Data Validation and Triangulation
    • 2.4.4 Analytical and Forecasting Approach

3 Market Dynamics and Trend Analysis

  • 3.1 Market Definition and Structure
  • 3.2 Key Market Drivers
  • 3.3 Market Restraints and Challenges
  • 3.4 Growth Opportunities and Investment Hotspots
  • 3.5 Industry Threats and Risk Assessment
  • 3.6 Technology and Innovation Landscape
  • 3.7 Emerging and High-Growth Markets
  • 3.8 Regulatory and Policy Environment
  • 3.9 Impact of COVID-19 and Recovery Outlook

4 Competitive and Strategic Assessment

  • 4.1 Porter's Five Forces Analysis
    • 4.1.1 Supplier Bargaining Power
    • 4.1.2 Buyer Bargaining Power
    • 4.1.3 Threat of Substitutes
    • 4.1.4 Threat of New Entrants
    • 4.1.5 Competitive Rivalry
  • 4.2 Market Share Analysis of Key Players
  • 4.3 Product Benchmarking and Performance Comparison

5 Global Advanced Composites Market, By Fiber Type

  • 5.1 Carbon Fiber Composites
  • 5.2 Glass Fiber Composites
  • 5.3 Aramid Fiber Composites
  • 5.4 Basalt Fiber Composites
  • 5.5 Natural Fiber Composites
  • 5.6 Ceramic Fiber Composites
  • 5.7 Hybrid Fiber Composites

6 Global Advanced Composites Market, By Matrix Type

  • 6.1 Polymer Matrix Composites (PMCs)
  • 6.2 Metal Matrix Composites (MMCs)
  • 6.3 Ceramic Matrix Composites (CMCs)

7 Global Advanced Composites Market, By Resin Type

  • 7.1 Epoxy
  • 7.2 Polyester
  • 7.3 Vinyl Ester
  • 7.4 Phenolic
  • 7.5 Polyamide (PA)
  • 7.6 Polyether Ether Ketone (PEEK)
  • 7.7 Polyphenylene Sulfide (PPS)
  • 7.8 Other High-Performance Resins

8 Global Advanced Composites Market, By Manufacturing Process

  • 8.1 Hand Lay-Up
  • 8.2 Spray-Up
  • 8.3 Filament Winding
  • 8.4 Pultrusion
  • 8.5 Resin Transfer Molding (RTM)
  • 8.6 Vacuum Infusion
  • 8.7 Compression Molding
  • 8.8 Injection Molding
  • 8.9 Automated Fiber Placement (AFP)
  • 8.10 Automated Tape Laying (ATL)

9 Global Advanced Composites Market, By Product Form

  • 9.1 Prepregs
  • 9.2 Fabrics
  • 9.3 Laminates
  • 9.4 Honeycomb Structures
  • 9.5 Sandwich Panels
  • 9.6 Profiles
  • 9.7 Tubes & Pipes

10 Global Advanced Composites Market, By Application

  • 10.1 Structural Components
  • 10.2 Semi-Structural Components
  • 10.3 Non-Structural Components
  • 10.4 Interior Components
  • 10.5 Exterior Components

11 Global Advanced Composites Market, By End-User

  • 11.1 Aerospace & Defense
  • 11.2 Automotive & Transportation
  • 11.3 Wind Energy
  • 11.4 Construction & Infrastructure
  • 11.5 Marine
  • 11.6 Electrical & Electronics
  • 11.7 Oil & Gas
  • 11.8 Industrial Equipment
  • 11.9 Medical
  • 11.10 Sporting Goods

12 Global Advanced Composites Market, By Geography

  • 12.1 North America
    • 12.1.1 United States
    • 12.1.2 Canada
    • 12.1.3 Mexico
  • 12.2 Europe
    • 12.2.1 United Kingdom
    • 12.2.2 Germany
    • 12.2.3 France
    • 12.2.4 Italy
    • 12.2.5 Spain
    • 12.2.6 Netherlands
    • 12.2.7 Belgium
    • 12.2.8 Sweden
    • 12.2.9 Switzerland
    • 12.2.10 Poland
    • 12.2.11 Rest of Europe
  • 12.3 Asia Pacific
    • 12.3.1 China
    • 12.3.2 Japan
    • 12.3.3 India
    • 12.3.4 South Korea
    • 12.3.5 Australia
    • 12.3.6 Indonesia
    • 12.3.7 Thailand
    • 12.3.8 Malaysia
    • 12.3.9 Singapore
    • 12.3.10 Vietnam
    • 12.3.11 Rest of Asia Pacific
  • 12.4 South America
    • 12.4.1 Brazil
    • 12.4.2 Argentina
    • 12.4.3 Colombia
    • 12.4.4 Chile
    • 12.4.5 Peru
    • 12.4.6 Rest of South America
  • 12.5 Rest of the World (RoW)
    • 12.5.1 Middle East
      • 12.5.1.1 Saudi Arabia
      • 12.5.1.2 United Arab Emirates
      • 12.5.1.3 Qatar
      • 12.5.1.4 Israel
      • 12.5.1.5 Rest of Middle East
    • 12.5.2 Africa
      • 12.5.2.1 South Africa
      • 12.5.2.2 Egypt
      • 12.5.2.3 Morocco
      • 12.5.2.4 Rest of Africa

13 Strategic Market Intelligence

  • 13.1 Industry Value Network and Supply Chain Assessment
  • 13.2 White-Space and Opportunity Mapping
  • 13.3 Product Evolution and Market Life Cycle Analysis
  • 13.4 Channel, Distributor, and Go-to-Market Assessment

14 Industry Developments and Strategic Initiatives

  • 14.1 Mergers and Acquisitions
  • 14.2 Partnerships, Alliances, and Joint Ventures
  • 14.3 New Product Launches and Certifications
  • 14.4 Capacity Expansion and Investments
  • 14.5 Other Strategic Initiatives

15 Company Profiles

  • 15.1 Hexcel Corporation
  • 15.2 Toray Industries, Inc.
  • 15.3 Teijin Limited
  • 15.4 SGL Carbon SE
  • 15.5 Solvay SA
  • 15.6 Mitsubishi Chemical Group Corporation
  • 15.7 Syensqo
  • 15.8 Owens Corning
  • 15.9 Gurit Holding AG
  • 15.10 Huntsman Corporation
  • 15.11 Park Aerospace Corp.
  • 15.12 Kordsa Teknik Tekstil A.S.
  • 15.13 Saertex GmbH & Co. KG
  • 15.14 Jushi Group Co., Ltd.
  • 15.15 TPI Composites, Inc.
  • 15.16 Exel Composites Plc
  • 15.17 Avient Corporation
  • 15.18 Compagnie de Saint-Gobain S.A.

List of Tables

  • Table 1 Global Advanced Composites Market Outlook, By Region (2023-2034) ($MN)
  • Table 2 Global Advanced Composites Market Outlook, By Fiber Type (2023-2034) ($MN)
  • Table 3 Global Advanced Composites Market Outlook, By Carbon Fiber Composites (2023-2034) ($MN)
  • Table 4 Global Advanced Composites Market Outlook, By Glass Fiber Composites (2023-2034) ($MN)
  • Table 5 Global Advanced Composites Market Outlook, By Aramid Fiber Composites (2023-2034) ($MN)
  • Table 6 Global Advanced Composites Market Outlook, By Basalt Fiber Composites (2023-2034) ($MN)
  • Table 7 Global Advanced Composites Market Outlook, By Natural Fiber Composites (2023-2034) ($MN)
  • Table 8 Global Advanced Composites Market Outlook, By Ceramic Fiber Composites (2023-2034) ($MN)
  • Table 9 Global Advanced Composites Market Outlook, By Hybrid Fiber Composites (2023-2034) ($MN)
  • Table 10 Global Advanced Composites Market Outlook, By Matrix Type (2023-2034) ($MN)
  • Table 11 Global Advanced Composites Market Outlook, By Polymer Matrix Composites (PMCs) (2023-2034) ($MN)
  • Table 12 Global Advanced Composites Market Outlook, By Metal Matrix Composites (MMCs) (2023-2034) ($MN)
  • Table 13 Global Advanced Composites Market Outlook, By Ceramic Matrix Composites (CMCs) (2023-2034) ($MN)
  • Table 14 Global Advanced Composites Market Outlook, By Resin Type (2023-2034) ($MN)
  • Table 15 Global Advanced Composites Market Outlook, By Epoxy (2023-2034) ($MN)
  • Table 16 Global Advanced Composites Market Outlook, By Polyester (2023-2034) ($MN)
  • Table 17 Global Advanced Composites Market Outlook, By Vinyl Ester (2023-2034) ($MN)
  • Table 18 Global Advanced Composites Market Outlook, By Phenolic (2023-2034) ($MN)
  • Table 19 Global Advanced Composites Market Outlook, By Polyamide (PA) (2023-2034) ($MN)
  • Table 20 Global Advanced Composites Market Outlook, By Polyether Ether Ketone (PEEK) (2023-2034) ($MN)
  • Table 21 Global Advanced Composites Market Outlook, By Polyphenylene Sulfide (PPS) (2023-2034) ($MN)
  • Table 22 Global Advanced Composites Market Outlook, By Other High-Performance Resins (2023-2034) ($MN)
  • Table 23 Global Advanced Composites Market Outlook, By Manufacturing Process (2023-2034) ($MN)
  • Table 24 Global Advanced Composites Market Outlook, By Hand Lay-Up (2023-2034) ($MN)
  • Table 25 Global Advanced Composites Market Outlook, By Spray-Up (2023-2034) ($MN)
  • Table 26 Global Advanced Composites Market Outlook, By Filament Winding (2023-2034) ($MN)
  • Table 27 Global Advanced Composites Market Outlook, By Pultrusion (2023-2034) ($MN)
  • Table 28 Global Advanced Composites Market Outlook, By Resin Transfer Molding (RTM) (2023-2034) ($MN)
  • Table 29 Global Advanced Composites Market Outlook, By Vacuum Infusion (2023-2034) ($MN)
  • Table 30 Global Advanced Composites Market Outlook, By Compression Molding (2023-2034) ($MN)
  • Table 31 Global Advanced Composites Market Outlook, By Injection Molding (2023-2034) ($MN)
  • Table 32 Global Advanced Composites Market Outlook, By Automated Fiber Placement (AFP) (2023-2034) ($MN)
  • Table 33 Global Advanced Composites Market Outlook, By Automated Tape Laying (ATL) (2023-2034) ($MN)
  • Table 34 Global Advanced Composites Market Outlook, By Product Form (2023-2034) ($MN)
  • Table 35 Global Advanced Composites Market Outlook, By Prepregs (2023-2034) ($MN)
  • Table 36 Global Advanced Composites Market Outlook, By Fabrics (2023-2034) ($MN)
  • Table 37 Global Advanced Composites Market Outlook, By Laminates (2023-2034) ($MN)
  • Table 38 Global Advanced Composites Market Outlook, By Honeycomb Structures (2023-2034) ($MN)
  • Table 39 Global Advanced Composites Market Outlook, By Sandwich Panels (2023-2034) ($MN)
  • Table 40 Global Advanced Composites Market Outlook, By Profiles (2023-2034) ($MN)
  • Table 41 Global Advanced Composites Market Outlook, By Tubes & Pipes (2023-2034) ($MN)
  • Table 42 Global Advanced Composites Market Outlook, By Application (2023-2034) ($MN)
  • Table 43 Global Advanced Composites Market Outlook, By Structural Components (2023-2034) ($MN)
  • Table 44 Global Advanced Composites Market Outlook, By Semi-Structural Components (2023-2034) ($MN)
  • Table 45 Global Advanced Composites Market Outlook, By Non-Structural Components (2023-2034) ($MN)
  • Table 46 Global Advanced Composites Market Outlook, By Interior Components (2023-2034) ($MN)
  • Table 47 Global Advanced Composites Market Outlook, By Exterior Components (2023-2034) ($MN)
  • Table 48 Global Advanced Composites Market Outlook, By End-User (2023-2034) ($MN)
  • Table 49 Global Advanced Composites Market Outlook, By Aerospace & Defense (2023-2034) ($MN)
  • Table 50 Global Advanced Composites Market Outlook, By Automotive & Transportation (2023-2034) ($MN)
  • Table 51 Global Advanced Composites Market Outlook, By Wind Energy (2023-2034) ($MN)
  • Table 52 Global Advanced Composites Market Outlook, By Construction & Infrastructure (2023-2034) ($MN)
  • Table 53 Global Advanced Composites Market Outlook, By Marine (2023-2034) ($MN)
  • Table 54 Global Advanced Composites Market Outlook, By Electrical & Electronics (2023-2034) ($MN)
  • Table 55 Global Advanced Composites Market Outlook, By Oil & Gas (2023-2034) ($MN)
  • Table 56 Global Advanced Composites Market Outlook, By Industrial Equipment (2023-2034) ($MN)
  • Table 57 Global Advanced Composites Market Outlook, By Medical (2023-2034) ($MN)
  • Table 58 Global Advanced Composites Market Outlook, By Sporting Goods (2023-2034) ($MN)

Note: Tables for North America, Europe, APAC, South America, and Rest of the World (RoW) Regions are also represented in the same manner as above.